首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Substituent position engineering of diphenylquinoline-based Ir(III) complexes for efficient orange and white PhOLEDs with high color stability/low efficiency roll-off using a solution-processed emission layer
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Substituent position engineering of diphenylquinoline-based Ir(III) complexes for efficient orange and white PhOLEDs with high color stability/low efficiency roll-off using a solution-processed emission layer

机译:二苯喹啉基Ir(III)配合物的取代位置工程,用于有效的橙色和白色PhOLED,具有通过溶液处理的发射层实现的高颜色稳定性/低效率滚降

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摘要

Three new heteroleptic Ir(III) complexes o-LIrpic, m-LIrpic, and p-LIrpic (L = CF(3)DPQ) consisting of 2,4-diphenylquinoline (DPQ) with a - CF3 group at ortho (o)/meta (m)/para (p) positions of the metalated phenyl ring, respectively, as the main ligands were synthesized and used as emitters in phosphorescent organic light-emitting diodes (PhOLEDs). We realized that - CF3 position extremely affects the crucial photophysical and electronic properties such as emission color, photoluminescence quantum yield (PLQY) and energy levels of these Ir(III) complexes resulting in - CF3 position-dependent performance of their PhOLEDs. To verify the effect of - CF3 group position on device performance, three other Ir(III) complexes o-LIrtmd, m-LIrtmd, and p-LIrtmd were synthesized using the same main ligands but a different ancillary ligand. In the two series of Ir(III) complexes, the devices with m-CF3 based complexes are outstanding in performance compared to o-or p-CF3 based ones due to the enhanced PLQY and well suppressed non-radiative deactivations by m-substitution. Finally, the single emission layer solution-processed orange and two-component white PhOLEDs fabricated using m-LIrpic as orange emitter achieved the maximum external quantum efficiency of 17.1% (43.9 cd A(-1)) and 21.1% (48.8 cd A(-1)), respectively, with highly stable color coordinates and low efficiency roll-off. This is the highest efficiency reported to date for solution-processed orange PhOLEDs using a small molecular host with easily accessible emitter.
机译:三种新的杂合的Ir(III)络合物o-LIrpic,m-LIrpic和p-LIrpic(L = CF(3)DPQ),由2,4-二苯基喹啉(DPQ)和邻位(o)/的CF3基团组成分别合成了金属化苯环的间位(m)/对位(p)作为主要配体,并将其用作磷光有机发光二极管(PhOLED)中的发射体。我们意识到-CF3位置极大地影响了这些Ir(III)配合物的至关重要的光物理和电子性质,例如发射颜色,光致发光量子产率(PLQY)和能级,从而导致了其PhOLED的-CF3位置依赖性性能。为了验证-CF 3基团位置对装置性能的影响,使用相同的主要配体但不同的辅助配体合成了其他三种Ir(III)配合物o-LIrtmd,m-LIrtmd和p-LIrtmd。在两个系列的Ir(III)配合物中,基于m-CF3的配合物的器件与基于o-或p-CF3的配合物相比,性能优异,这是由于PLQY增强和m-取代引起的非辐射失活得到了很好的抑制。最后,使用m-LIrpic作为橙色发射器制造的单发射层溶液处理的橙色和两组分白色PhOLED达到了17.1%(43.9 cd A(-1))和21.1%(48.8 cd A(48.8 cd A(1))的最大外部量子效率。 -1))分别具有高度稳定的颜色坐标和低效率的滚降。这是迄今为止使用具有易于接近的发射器的小分子基质进行溶液处理的橙色PhOLED的最高效率。

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